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Original Articles

Effect of Particles on Lubricated Friction

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Pages 51-56 | Published online: 25 Mar 2008

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Read on this site (3)

H. Zhong, L. Y. Dai, F. C. Liu, X. Y. Zhang, C. L. Tan, M. Z. Ma & R. P. Liu. (2015) Friction and wear behaviour of AISI 5140 steel under rectangular wave loading conditions. Tribology - Materials, Surfaces & Interfaces 9:2, pages 92-98.
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M. Tomimoto, K. Mizuhara & T. Yamamoto. (2002) Effect of Particles on Lubricated Friction - Verification of Dead Time Phenomenon and Friction Theory. Tribology Transactions 45:1, pages 94-102.
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M. Tomimoto, K. Mizuhara & T. Yamamoto. (2002) Effect of Particles on Lubricated Friction - Theoretical Analysis of Friction Caused by Particles in Journal Bearing. Tribology Transactions 45:1, pages 47-54.
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Articles from other publishers (17)

R. Baixauli, A. Dobiašová, A. Tarrega & L. Laguna. (2023) Pairing physical and sensory properties of dysphagia thickeners to understand disliking. Food Hydrocolloids for Health 3, pages 100140.
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Wojciech Litwin, Michał Wasilczuk, Michał Wodtke & Artur Olszewski. (2023) The influence of polymer bearing material and lubricating grooves layout on wear of journal bearings lubricated with contaminated water. Tribology International 179, pages 108159.
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Karen Mitchell, Anne Neville, Gary M. Walker, Michael R. Sutton & Olivier J. Cayre. (2018) Synthesis and tribological testing of poly(methyl methacrylate) particles containing encapsulated organic friction modifier. Tribology International 124, pages 124-133.
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George K Nikas. (2017) Particle extrusion in elastohydrodynamic line contacts: Dynamic forces and energy consumption. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 231:10, pages 1320-1340.
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George K. Nikas. (2016) Algebraic Equations for the Pile-Up Geometry in Debris Particle Indentation of Rolling Elastohydrodynamic Contacts. Journal of Tribology 138:2.
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George K. Nikas. (2015) Modeling Dark and White Layer Formation on Elastohydrodynamically Lubricated Steel Surfaces by Thermomechanical Indentation or Abrasion by Metallic Particles. Journal of Tribology 137:3.
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Rodrigo Nicoletti. (2014) The Importance of the Heat Capacity of Lubricants With Nanoparticles in the Static Behavior of Journal Bearings. Journal of Tribology 136:4.
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George K Nikas. (2013) Strain-rate effects on the plastic indentation and abrasion of elastohydrodynamic contacts by debris particles. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 228:1, pages 22-45.
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George K Nikas. (2012) Debris particle indentation and abrasion of machine-element contacts: An experimentally validated, thermoelastoplastic numerical model with micro-hardness and frictional heating effects. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 227:6, pages 579-617.
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George K Nikas. (2012) An experimentally validated numerical model of indentation and abrasion by debris particles in machine-element contacts considering micro-hardness effects. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 226:5, pages 406-438.
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Han Haiyan, Zhang Youyun & Zhong Zhenyuan. (2010) Effect of particle transient motion on lubrication. Industrial Lubrication and Tribology 62:3, pages 126-135.
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G K Nikas. (2010) A state-of-the-art review on the effects of particulate contamination and related topics in machine-element contacts. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 224:5, pages 453-479.
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C Q Yuan, X P Yan & X C Zhou. (2008) Effects of Fe powder on sliding wear processes under lubricants with different viscosities. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 222:4, pages 611-616.
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C.Q. Yuan, Z. Peng, X.C. Zhou & X.P. Yan. (2005) The characterization of wear transitions in sliding wear process contaminated with silica and iron powder. Tribology International 38:2, pages 129-143.
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C.Q. Yuan, Z. Peng, X.C. Zhou & X.P. Yan. (2004) Effects of temperature on sliding wear process under contaminated lubricant test conditions. Wear 257:7-8, pages 812-822.
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Makoto Tomimoto. (2003) Experimental verification of a particle induced friction model in journal bearings. Wear 254:7-8, pages 749-762.
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P. J. Blau. 2001. Fundamentals of Tribology and Bridging the Gap Between the Macro- and Micro/Nanoscales. Fundamentals of Tribology and Bridging the Gap Between the Macro- and Micro/Nanoscales 241 260 .

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